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Resolving kinesin stepping: one head at a time

机译:解决驱动蛋白步进问题:一次一个头

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摘要

Kinesins are well known to power diverse long-range transport processes in virtually all eukaryotic cells. The ATP-dependent processive stepping as well as the regulation of kinesin’ activity have, thus, been the focus of extensive studies over the past decades. It is widely accepted that kinesin motors can self-regulate their activity by suppressing the catalytic activity of the “heads.” The distal random coil at the C terminus, termed “tail domain,” is proposed to mediate this autoinhibition; however, a direct regulatory influence of the tail on the processive stepping of kinesin proved difficult to capture. Here, we simultaneously tracked the two distinct head domains in the kinesin-2 motor using dual-color super resolution microscopy (dcFIONA) and reveal for the first time their individual properties during processive stepping. We show that the autoinhibitory wild-type conformation selectively impacts one head in the heterodimer but not the other. Our results provide insights into the regulated kinesin stepping that had escaped experimental scrutiny so far.
机译:众所周知,驱动蛋白在几乎所有的真核细胞中都可以促进多种远距离转运过程。因此,过去几十年来,依赖ATP的过程性步进以及对驱动蛋白活性的调节一直是广泛研究的重点。驱动蛋白马达可以通过抑制“头部”的催化活性来自我调节其活性,这一点已被广泛接受。建议在C末端的远端随机线圈称为“尾域”,以介导这种自抑制作用。然而,尾巴对驱动蛋白进行性步进的直接调节影响被证明难以捕获。在这里,我们使用双色超分辨率显微镜(dcFIONA)同时跟踪了kinesin-2电机中两个不同的头部结构域,并首次揭示了它们在进行性步进过程中的各自属性。我们表明,自抑制野生型构象选择性影响异二聚体中的一个头,而不影响另一个。我们的结果提供了迄今为止尚无法进行实验检查的受控驱动蛋白步进的真知灼见。

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